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不同流变学特性的流体对玻璃体切割术中流体效应领域的影响。

The Influence of Fluids With Varying Rheological Properties on the Field of Fluidic Effect During Vitrectomy.

作者信息

Vedeniapina Daria, Steel David H, Whalley Richard D

机构信息

School of Engineering, Newcastle University, Newcastle upon Tyne, UK.

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

出版信息

Transl Vis Sci Technol. 2025 Aug 1;14(8):26. doi: 10.1167/tvst.14.8.26.

Abstract

PURPOSE

The purpose of this study was to investigate the field of fluidic effect (FOE) at the vitrectomy port in a range of artificial vitreous solutions (AVS) with varying rheological characteristics to add insight into the effects surgeons observe during vitrectomy and how they change with a variety of console settings.

METHODS

Laboratory-based investigation using in vitro testing was carried out at Newcastle University, United Kingdom. Testing was conducted using an Eva Nexus Vitrectomy system (D.O.R.C. Dutch Ophthalmic Research Center [International] B.V., Zuidland, The Netherlands) using dual cutting action vitrectomy probes in 3 gauge sizes (23G, 25G, and 27G). Using AVS, particle image velocimetry (PIV) measurements were conducted for various console settings and AVS concentrations.

RESULTS

Rheological analysis of AVS with varying hyaluronic acid concentrations showed shear thinning and viscoelastic properties, resembling the liquid component of human vitreous humour. PIV during vitrectomy revealed that a dual cutting probe created a focused, elongated jet stream in AVS, contrasting with the symmetrical flow in balanced salt solution (BSS). Key findings included peak fluid velocity magnitude in AVS was 0.5 to 1 mm from the port, broadening with increased vacuum, higher vacuum led to inferior jet deviation, cut rates increased peak velocities, with viscoelasticity influencing fluid flow dynamics, and increasing hyaluronic acid concentration transitioned flow from BSS-like to elongated jet profiles.

CONCLUSIONS

Using an AVS with similar rheological properties to the liquid component of human vitreous and a high-speed PIV technique, we evaluated the FOE around vitrectomy probes with a range of surgical relevant variables. Further research into the influence of different vitreous substitutes and surgical parameters is crucial to enhance our understanding and refine vitrectomy procedures.

TRANSLATIONAL RELEVANCE

Our findings provide valuable insights into the fluid dynamics during vitrectomy, helping to optimize surgical techniques and improve patient outcomes.

摘要

目的

本研究旨在探究在一系列具有不同流变学特性的人工玻璃体溶液(AVS)中,玻璃体切割术端口处的流体效应(FOE)领域,以深入了解外科医生在玻璃体切割术中观察到的效应,以及这些效应如何随各种控制台设置而变化。

方法

在英国纽卡斯尔大学进行了基于实验室的体外测试研究。使用伊娃·奈克斯玻璃体切割系统(荷兰眼科研究中心[国际]有限公司,荷兰南地),采用三种规格(23G、25G和27G)的双切割动作玻璃体切割探针进行测试。使用AVS,针对各种控制台设置和AVS浓度进行粒子图像测速(PIV)测量。

结果

对不同透明质酸浓度的AVS进行流变学分析,显示出剪切变稀和粘弹性特性,类似于人玻璃体液的液体成分。玻璃体切割术中的PIV显示,双切割探针在AVS中产生了聚焦、细长的射流,这与平衡盐溶液(BSS)中的对称流动形成对比。主要发现包括:AVS中的流体速度峰值在距端口0.5至1毫米处,随着真空度增加而变宽,更高的真空度导致射流偏差较小,切割速率增加了峰值速度,粘弹性影响流体流动动力学,并且透明质酸浓度增加使流动从类似BSS的状态转变为细长射流形态。

结论

使用具有与人玻璃体液液体成分相似流变学特性的AVS和高速PIV技术,我们评估了一系列与手术相关变量下玻璃体切割探针周围的FOE。进一步研究不同玻璃体替代物和手术参数的影响对于增强我们的理解和完善玻璃体切割手术至关重要。

转化相关性

我们的研究结果为玻璃体切割术中的流体动力学提供了有价值的见解,有助于优化手术技术并改善患者预后。

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